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Examination of the Maskell III Blockage Correction Technique for Full Scale Testing in the NRC 9-Meter Wind Tunnel

机译:基于Maskell III阻塞校正技术在NRC 9米风隧道中进行全规模测试的阻塞校正技术

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The 9-meter wind tunnel of the National Research Council (NRC) of Canada is commonly employed in full-scale testing of class 8 tractors. In this configuration the model blocks 10 - 15% of the test section cross-sectional area, which is greater than generally advocated blockage limits. The NRC utilizes the Maskell III method to correct data for wall interference but the effectiveness of this technique at such blockage levels remained to be seen. Corrected full-scale data was compared to data acquired with a half-scale model to determine how closely the corrected high-blockage data would agree with the low-blockage baseline. The half-scale model presented an opportunity to test at full-scale Reynolds numbers, with less than 4% blockage, which falls within most recommendations of maximum allowable blockage. It will be shown that after correcting the data using the Maskell III method, the wind-averaged drag coefficient of the full- and half-scale baseline cases were within 3 drag counts (Δ(C_D) = 0.003) of each other.
机译:加拿大国家研究委员会(NRC)的9米风隧道通常用于8级拖拉机的全规模测试。在这种配置中,模型块10-15%的测试部分的横截面积,其大于通常主张的封闭限制。 NRC利用Maskell III方法来校正壁干扰的数据,但这种技术在这种封闭水平处的有效性仍然可以看到。将校正的全尺度数据与使用半尺度模型获取的数据进行比较,以确定校正的高封闭数据如何与低块基线同意。半尺度模型提出了在满量程雷诺数测试的机会,不到4%的阻塞,这在最大允许堵塞的最大建议范围内下降。将表明,在使用Maskell III方法纠正数据之后,全级和半级基线壳体的风平均阻力系数在彼此的3个拖动计数(Δ(C_D)= 0.003)内。

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